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You searched IISERK - Title: Electronic image collection with animations for the Human brain, fifth edition
Tag In 1 In 2 Data
001  vtls000037702
003  IISER-K
005  20221202134400.0
008  221109t2021 sz a b 001 0 eng
020  \a 3030767272 \q (hardback)
039 9\a 202212021344 \b Siladitya \c 202212021323 \d Siladitya \y 202211091449 \z Pitambar
040  \a 9783030767273 \q (hardback)
08204\a 616.07548 \b DAR1
1001 \a Dada, Michael O., \e author.
24510\a Computational molecular magnetic resonance imaging for neuro-oncology / \c Michael O. Dada, Bamidele O. Awojoyogbe.
264 1\a Cham, Switzerland : \b Springer, \c [2021].
264 4\c ©2021
300  \a xxxi, 389 pages : \b illustrations ; \c 24 cm.
336  \a text \b txt \2 rdacontent
337  \a unmediated \b n \2 rdamedia
338  \a volume \b nc \2 rdacarrier
4901 \a Biological and Medical Physics, Biomedical Engineering
504  \a Includes bibliographical references and index.
5050 \a Chapter 1. General Introduction -- Chapter 2. Fundamental Of Nmr -- Chapter 3. Computational Diffusion Magnetic Resonance Imaging -- Chapter 4. Radiofrequency Identification (Rfid) System For Computational Magnetic Resonance Imaging Of Blood Flow At Suction Points -- Chapter 5. A Computational Magnetic Resonance Imaging Based On Bloch Nmr Flow Equation, Mri Finger Printing, Python Deep Learning For The Classification Of Adult Brain Tumours -- Chapter 6. Analysis Of Hydrogen-Like Ions For Neurocomputing Based On Bloch Nmr Flow Equation -- Chapter 7. Quantum Mechanical Model Of Bloch Nmr Flow Equations For The Transport Analysis Of Quantm-Drugs In Microscopic Blood Vessels Applicable In Nanomedicine -- Chapter 8. Application Of Machine Learning For Magnetic Resonance Relaxometry Data-Representation And Classification Of Human Brain Tumours -- Chapter 9. Advanced Magnetic Resonance Image Processing And Quantitative Analysis In Avizo For Demonstrating Radiomic Contrast Between Radiation Necrosis And Tumor Progression -- Chapter 10. Computational Analysis of Magnetic Resonance Imaging Contrast Agents and their Physico-Chemical Variables -- Chapter 11. General Conclusion.
520  \a Based on the analytical methods and the computer programs presented in this book, all that may be needed to perform MRI tissue diagnosis is the availability of relaxometric data and simple computer program proficiency. These programs are easy to use, highly interactive and the data processing is fast and unambiguous. Laboratories (with or without sophisticated facilities) can perform computational magnetic resonance diagnosis with only T1 and T2 relaxation data. The results have motivated the use of data to produce data-driven predictions required for machine learning, artificial intelligence (AI) and deep learning for multidisciplinary and interdisciplinary research. Consequently, this book is intended to be very useful for students, scientists, engineers, the medial personnel and researchers who are interested in developing new concepts for deeper appreciation of computational magnetic Resonance Imaging for medical diagnosis, prognosis, therapy and management of tissue diseases.
650 0\a Magnetic Resonance Imaging. \0 http://id.loc.gov/authorities/subjects/sh85079741
650 0\a Brain \x Cancer \0 http://id.loc.gov/authorities/subjects/sh85016329xMagnetic resonance imaging. \0 http://id.loc.gov/authorities/subjects/sh00006590
7001 \a Awojoyogbe, Bamidele O. \e author. \0 (orcid)0000-0003-3699-0897 1 https://orcid.org/0000-0003-3699-0897
830 0\a Biological and medical physics, biomedical engineering. \0 http://id.loc.gov/authorities/names/n2003005491

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